首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Regulation of bacterial sugar-H+ symport by phosphoenolpyruvate-dependent enzyme I/HPr-mediated phosphorylation.
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Regulation of bacterial sugar-H+ symport by phosphoenolpyruvate-dependent enzyme I/HPr-mediated phosphorylation.

机译:磷酸烯醇丙酮酸依赖性酶I / HPr介导的磷酸化对细菌糖H +共生的调节。

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The lactose-H+ symport protein (LacS) of Streptococcus thermophilus has a C-terminal hydrophilic domain that is homologous to IIA protein(s) domains of the phosphoenolpyruvate:sugar phosphotransferase system (PTS). C-terminal truncation mutants were constructed and expressed in Escherichia coli and their properties were analyzed. Remarkably, the entire IIA domain (160 amino acids) could be deleted without significant effect on lactose-H+ symport and galactoside equilibrium exchange. Analysis of the LacS mutants in S. thermophilus cells suggested that transport is affected by PTS-mediated phosphorylation of the IIA domain. For further studies, membrane vesicles of S. thermophilus were fused with cytochrome c oxidase-containing liposomes, and, when appropriate, phosphoenolpyruvate (PEP) plus purified enzyme I and heat-stable protein HPr were incorporated into the hybrid membranes. Generation of a protonmotive force (delta p) in the hybrid membranes resulted in accumulation of lactose, whereas uptake of the PTS sugar sucrose was not observed. With PEP and the energy-coupling proteins enzyme I and HPr of the PTS on the inside, high rates of sucrose uptake were observed, whereas delta p-driven lactose uptake by wild-type LacS was inhibited. This inhibition was not observed with LacS(delta 160) and LacS(H552R), indicating that PEP-dependent enzyme I/HPr-mediated phosphorylation of the IIA domain (possibly the conserved His-552 residue) modulates lactose-H+ symport activity.
机译:嗜热链球菌的乳糖-H +共生蛋白(LacS)具有一个C端亲水域,该域与磷酸烯醇丙酮酸:糖磷酸转移酶系统(PTS)的IIA蛋白域同源。构建C末端截短突变体并在大肠杆菌中表达,并分析其性质。值得注意的是,可以删除整个IIA结构域(160个氨基酸),而对乳糖-H +共存和半乳糖苷平衡交换没有明显影响。对嗜热链球菌细胞中的LacS突变体的分析表明,转运受PTS介导的IIA域磷酸化的影响。为了进一步研究,将嗜热链球菌的膜囊泡与含细胞色素C氧化酶的脂质体融合,并在适当时将磷酸烯醇丙酮酸(PEP)加纯化的酶I和热稳定蛋白HPr掺入杂化膜中。在杂化膜中产生质子动力(δp)导致乳糖积聚,而未观察到PTS糖蔗糖的摄取。在内部使用PEP和PTS的能量耦合蛋白酶I和HPr观察到高的蔗糖摄取率,而野生型LacS抑制了δp驱动的乳糖摄取。用LacS(δ160)和LacS(H552R)未观察到这种抑制作用,表明IIA域(可能是保守的His-552残基)的PEP依赖性酶I / HPr介导的磷酸化调节了乳糖H +的共转运。

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